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ARS Home » Midwest Area » Ames, Iowa » National Laboratory for Agriculture and The Environment » Soil, Water & Air Resources Research » Research » Research Project #431574

Research Project: Reducing the Environmental Footprint from Agricultural Systems through Managing Resources and Nutrient Inputs

Location: Soil, Water & Air Resources Research

Publications (Clicking on the reprint icon Reprint Icon will take you to the publication reprint.)

Impact of Bacillus subtilis on manure solids, odor, and microbiome Reprint Icon - (Peer Reviewed Journal)
Hwang, O., Yun, Y., Trabue, S.L. 2023. Impact of Bacillus subtilis on manure solids, odor, and microbiome. Journal of Environmental Management. 333. Article 117390. https://doi.org/10.1016/j.jenvman.2023.117390.

The effect of benzoic acid with or without a direct-fed microbial on the nutrient metabolism and gas emissions of growing pigs Reprint Icon - (Peer Reviewed Journal)
Humphrey, D.C., Bergstrom, J.R., Pérez Calvo, E., Trabue, S.L., Scoggin, K.D., Greiner, L.L. 2022. The effect of benzoic acid with or without a direct-fed microbial on the nutrient metabolism and gas emissions of growing pigs. Journal of Animal Science. https://doi.org/10.1093/jas/skac296.

Performance of Sentinel-2 SAFER ET model for daily and seasonal estimation of grapevine water consumption Reprint Icon - (Peer Reviewed Journal)
Safre, A.L., Nassar, A., Torres-Rua, A., Aboutalebi, M., Saad, J.C., Manzione, R.L., Teixeira, A.H., Prueger, J.H., McKee, L.G., Alfieri, J.G., Hipps, L.E., Nieto, H., White, W.A., Alsina, M., Sanchez, L., Kustas, W.P., Dokoozlian, N., Feng, G.G., Anderson, M.C. 2022. Performance of Sentinel-2 SAFER ET model for daily and seasonal estimation of grapevine water consumption. Irrigation Science. 40:635-654. https://doi.org/10.1007/s00271-022-00810-1.

Swine diets: Impact of carbohydrate sources on manure characteristics and gas emissions Reprint Icon - (Peer Reviewed Journal)
Trabue, S.L., Kerr, B.J., Scoggin, K.D., Andersen, D., van Weelden, M. 2022. Swine diets: Impact of carbohydrate sources on manure characteristics and gas emissions. Science of the Total Environment. 825. Article e153911. https://doi.org/10.1016/j.scitotenv.2022.153911.

Eubacterium coprostanoligenes and Methanoculleus identified as potential producers of metabolites that contribute to swine manure foaming Reprint Icon - (Peer Reviewed Journal)
Strom, N., Ma, Y., Andersen, D., Trabue, S.L., Chen, C., Hu, B. 2022. Eubacterium coprostanoligenes and Methanoculleus identified as potential producers of metabolites that contribute to swine manure foaming. Journal of Applied Microbiology. 132(4):2906-2924. https://doi.org/10.1111/jam.15384.

N2O is an important piece of the puzzle, but seeing the whole picture strengthens denitrification research Reprint Icon - (Research Notes)
Emmett, B.D. 2021. N2O is an important piece of the puzzle, but seeing the whole picture strengthens denitrification research. Journal of Geophysical Research-Biogeosciences. 126(10). Article e2021JG006576. https://doi.org/10.1029/2021JG006576.

Nitrogen losses in response to conservation practices and sustainable intensification of corn-soybean cropping systems in the Upper Midwest - (Abstract Only)
Emmett, B.D., O'Brien, P.L., Malone, R.W., Kovar, J.L., Cambardella, C.A., Jaynes, D.B., Kaspar, T.C., Kohler, K.A., Moorman, T.B., Parkin, T.B. 2021. Nitrogen losses in response to conservation practices and sustainable intensification of corn-soybean cropping systems in the Upper Midwest [abstract]. Soil and Water Conservation Society Proceedings.

Microbial assemblages and methanogenesis pathways impact methane production and foaming in manure deep-pit storages Reprint Icon - (Peer Reviewed Journal)
Yang, F., Andersen, D.S., Trabue, S.L., Kent, A.D., Pepple, L.M., Gates, R.S., Howe, A.S. 2021. Microbial assemblages and methanogenesis pathways impact methane production and foaming in manure deep-pit storages. PLoS ONE. 16(8). https://doi.org/10.1371/journal.pone.0254730.

Soil management legacy alters weed-crop competition through biotic and abiotic pathways Reprint Icon - (Peer Reviewed Journal)
Gan, H., Emmett, B.D., Drinkwater, L.E. 2021. Soil management legacy alters weed-crop competition through biotic and abiotic pathways. Plant and Soil. 462:543-560. https://doi.org/10.1007/s11104-021-04891-3.

Conserved and reproducible bacterial communities associate with extraradical hyphae of arbuscular mycorrhizal fungi Reprint Icon - (Peer Reviewed Journal)
Emmett, B.D., Levesque-Tremblay, V., Harrison, M.J. 2021. Conserved and reproducible bacterial communities associate with extraradical hyphae of arbuscular mycorrhizal fungi. The ISME Journal: Multidisciplinary Journal of Microbial Ecology. 15:2276-2288. https://doi.org/10.1038/s41396-021-00920-2.

Swine manure dilution with lagoon effluent impact on odor reduction and manure digestion Reprint Icon - (Peer Reviewed Journal)
Hwang, O., Scoggin, K.D., Andersen, D., Ro, K.S., Trabue, S.L. 2021. Swine manure dilution with lagoon effluent impact on odor reduction and manure digestion. Journal of Environmental Quality. 50(2):336-349. https://doi.org/10.1002/jeq2.20197.

Swine diets impact manure characteristics and gas emissions: Part II protein source Reprint Icon - (Peer Reviewed Journal)
Trabue, S.L., Kerr, B.J., Scoggin, K.D., Andersen, D., Van Weelden, M. 2021. Swine diets impact manure characteristics and gas emissions: Part II protein source. Science of the Total Environment. 763. Article 144207. https://doi.org/10.1016/j.scitotenv.2020.144207.

Swine diets impact manure characteristics and gas emissions: Part I protein level Reprint Icon - (Peer Reviewed Journal)
Trabue, S.L., Kerr, B.J., Scoggin, K.D., Anderson, D., Van Weelden, M. 2021. Swine diets impact manure characteristics and gas emissions: Part I protein level. Science of the Total Environment. 755. Article 142528. https://doi.org/10.1016/j.scitotenv.2020.142528.

Swine diets impact manure characteristics and gas emissions: Part II Sulfur source Reprint Icon - (Peer Reviewed Journal)
Trabue, S.L., Kerr, B.J., Scoggin, K.D. 2019. Swine diets impact manure characteristics and gas emissions: Part II Sulfur source. Science of the Total Environment. 698:1115-1124. https://doi.org/10.1016/j.scitotenv.2019.06.272.

Swine diets impact manure characteristics and gas emissions: Part I sulfur level Reprint Icon - (Peer Reviewed Journal)
Trabue, S.L., Kerr, B.J., Scoggin, K.D. 2019. Swine diets impact manure characteristics and gas emissions: Part I sulfur level. Science of the Total Environment. 687:800-807. https://doi.org/10.1016/j.scitotenv.2019.06.130.

Improving soil heat flux accuracy with the Philip correction technique Reprint Icon - (Peer Reviewed Journal)
Tong, B., Sauer, T.J., Gao, Z., Xiao, X., Horton, R. 2019. Improving soil heat flux accuracy with the Philip correction technique. Journal of Hydrometeorology. 20(7):1435-1448. https://doi.org/10.1175/JHM-D-18-0243.1.

Odorous compounds sources and transport from a swine deep-pit finishing operation: A case study Reprint Icon - (Peer Reviewed Journal)
Trabue, S.L., Scoggin, K.D., Tyndall, J., Sauer, T.J., Hernandez-Ramirez, G., Pfeiffer, R.L., Hatfield, J.L. 2019. Odorous compounds sources and transport from a swine deep-pit finishing operation: A case study. Journal of Environmental Management. 233:12-23. https://doi.org/10.1016/j.jenvman.2018.10.110.

Crop Water Stress Index of an irrigated vineyard in the Central Valley of California Reprint Icon - (Peer Reviewed Journal)
Prueger, J.H., Parry, C.K., Kustas, W.P., Alfieri, J.G., Alsina, M.A., Nieto, H., Wilson, T.G., Hipps, L.E., Anderson, M.C., Hatfield, J.L., Gao, F., McKee, L.G., McElrone, A.J., Agam, N., Los, S. 2018. Crop Water Stress Index of an irrigated vineyard in the Central Valley of California. Irrigation Science. 37(3):297–313. https://doi.org/10.1007/s00271-018-0598-4.

Narasin as a manure additive to reduce methane production from swine manure Reprint Icon - (Peer Reviewed Journal)
Andersen, D.S., Yang, F., Trabue, S.L., Kerr, B.J., Howe, A.S. 2018. Narasin as manure additive to reduce methane production from swine manure. Transactions of the ASABE. 61(3):943-953. https://doi.org/10.13031/trans.12568.

Portable automation of static chamber sample collection for quantifying soil gas flux Reprint Icon - (Peer Reviewed Journal)
Davis, M.P., Groh, T.A., Parkin, T.B., Williams, R.J., Isenhart, T.M., Hofmockel, K.H. 2018. Portable automation of static chamber sample collection for quantifying soil gas flux. Journal of Environmental Quality. 47(2):270-275. https://doi.org/10.2134/jeq2017.10.0387.